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Optimization Comparison of Stand-Alone and Grid-Tied Solar PV Systems in Rwanda

机译:卢旺达独立式和并网式太阳能光伏系统的优化比较

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Solar power has gained great usage in electricity generation world-wide, and stand-alone is common in Rwanda. Site visits and energy audit estimates for a typical residential house in Rwamagana district, were used to cost effectively compare stand-alone and grid-tied PV systems able to supply 7.2 kWh/day, load. Algorithms design of lifetime costs and benefits were developed, to analyse total daily energy requirements using Frequentist approaches to obtain the Kullback-Liebler solution for convexity. The Frequentist inference approaches adopted for study led to optimal solution of the design problem. Results show that stand-alone PV system needs 17 modules with US$ 15,932 initial investment and 18.1 years payback period while grid-tied PV system requires 8 modules, with US$4449 investment, and 5.7 years payback. Once government adopts smart grid technology with mature [1] feed-in-tariff, grid-tied solar power systems [2] can be used to increase electricity supply in Rwanda through domestic energy producers, because of lower initial investment costs and shorter payback periods.
机译:太阳能在全世界的发电中得到了广泛的使用,单机在卢旺达很普遍。 Rwamagana地区一栋典型住宅的实地考察和能源审计估算被用来有效地比较能够提供每天7.2 kWh负荷的独立和并网光伏系统。开发了寿命成本和收益的算法设计,以使用Frequentist方法分析每日总能量需求,以获得凸度的Kullback-Liebler解。研究中采用的惯常推理方法导致了设计问题的最佳解决方案。结果表明,独立光伏系统需要17个模块,初始投资为15,932美元,投资回收期为18.1年,而并网光伏系统需要8个模块,投资为4,449美元,投资回收期为5.7年。一旦政府采用具有成熟的上网电价[1]的智能电网技术,由于较低的初始投资成本和较短的投资回收期,可以将并网太阳能发电系统[2]用于通过国内能源生产商增加卢旺达的电力供应。 。

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